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  • SME-ICGCM
    Shear Bond Stresses Along Cable Bolts

    By Hani S. Mitri

    The behaviour of grouted cable bolts used for rock reinforcement as a means of ground control in hard rock mining is investigated. The study utilizes an analytical model which is based on the variatio

    Jan 1, 1990

  • SME-ICGCM
    Evaluation Of Low-Coal ATRS Systems

    By M. Terry Hoch

    This paper presents information on low-coal ATRS systems that are now in use. A study was conducted consisting of an in-mine evaluation of ATRS- equipped roof bolters capable of bolting in seams below

    Jan 1, 1988

  • SME-ICGCM
    Three Dimensional Numerical Modelling Of Effects Of Subsidence On Escarpments

    By Leigh J. Wardle

    Significant coal reserves in New South Wales lie under areas with steep topography such as valley slopes and cliffs. Subsidence predictions are difficult to make for these locations as existing empiri

    Jan 1, 1992

  • SME-ICGCM
    Analysis of Extensometer Data from a Room Widening Experiment Designed to Induce a Roof Fall

    By Dennis R. Dolinar

    Roof falls, even of supported roof, still constitute a major hazard in underground mines. However, associated with any fall or instability is a pattern of roof movement. Therefore, the National Instit

    Jan 1, 1997

  • SME-ICGCM
    Ground Control Problem Associated with Longwall Mining of Developed Pillars

    By T. N. Singh

    Board and pillar system of mining has beer, practised in India in view of abundant availability of cheap labour force, low investment and quick return. Subsequently, selective mining from thick seems

    Jan 1, 1984

  • SME-ICGCM
    Remote Detection Of Abandoned Mine Workings Using Radio Imaging Method Techniques

    By James G. Schotsch

    Unmapped abandoned mines are hazards for under¬ground mines, surface mines and surface structures. The Radio Imaging Method (RIM) provides a cross borehole technique to remotely detect abandoned mine

    Jan 1, 1990

  • SME-ICGCM
    Mining Under Strong Roof

    By K. Y. Haramy

    Strong roof helps minimize roof fall problems in coal mine entries. However, the Inability of strong roof to cave readily may contribute to major ground control problems In Iongwall and retreat mining

    Jan 1, 1988

  • SME-ICGCM
    Underground Application Of Optimization

    By S. J. Jung

    The goal of this research is to demonstrate how optimization methodology can be coupled with the finite element method for greater stability of underground mine openings. As a result of increasing min

    Jan 1, 1993

  • SME-ICGCM
    Surface Subsidence Velocity of Fully-Mechanized Thick Seam Top Coal Caving Mining

    By Wenbing Guo

    Surface subsidence for fully mechanized thick seam top coal caving was measured, and surface subsidence characteristics were then analyzed. The subsidence initiation distance from the set-up room and

    Jan 1, 2011

  • SME-ICGCM
    A New Rock Mass Failure Criteria Based On Rate Of Movement

    By Hamid Maleki

    A new failure criteria is proposed for assessment of roof stability in underground sedimentary rocks. Unlike other stability assessment techniques, this method is simple and practical, having improved

    Jan 1, 1990

  • SME-ICGCM
    Mining-Induced Stress Measurement With Hydraulic Borerole Pressure Cells

    By Paul A. Lu

    This paper proposes an unconventional, simple, and practical method of measuring mining-induced around stresses with hydraulic borehole pressure cells. The method is a direct ground stress measuring t

    Jan 1, 1984

  • SME-ICGCM
    Evaluating Anchorage Mechanisms Of Fully Encapsulated Rock Bolts

    By Clare Offner

    In 1998, the Australian Coal Association Research Program (ACARP) awarded funding to the School of Mining Engineering at the University of New South Wales to establish a rockbolt testing facility to r

    Jan 1, 2000

  • SME-ICGCM
    Jointing Effects On Pillar Strength

    By Gabriel Esterhuizen

    When designing pillars in coal and hard rock mines it is necessary to determine the strength of the rock mass forming the pillars. Empirical strength equations, based on rock mass classification techn

    Jan 1, 2000

  • SME-ICGCM
    How To Cope With Cutter Roof Problem (e6639bdb-2d11-4a70-a3df-8a3a479f7b3e)

    By A. Wahab Khair

    This paper presents results of the experiments carried out in Beth Energy No. 33 Mine for the purpose of alleviating problems associated with cutter roof. Cutter roof problems have delayed the advance

    Jan 1, 1992

  • SME-ICGCM
    Resupporting High Roof Falls

    By Nicholas Chlumecky

    One of the most dangerous jobs in mining is that of resupporting the roof after a fall has occurred. The resulting cavity may be more than 30 feet high, with relatively unstable sides and roof. It is

    Jan 1, 1981

  • SME-ICGCM
    Mine Panel Collapse - Two Case Studies

    By Hanjie Chen

    A mine panel collapse may occur when pillar sizes are too small or the surrounding rock strata (roof or floor) yields. After a small pillar fails, its loading is rapidly transferred to adjacent pillar

    Jan 1, 1999

  • SME-ICGCM
    Rock Reinforcement Longevity

    By Francis S. Kendorski

    Rock reinforcement has been in widespread use and generally has been accepted in underground mining and tunneling since the 1950s. The first rock reinforcement technologies employed were mechanical an

    Jan 1, 2000

  • SME-ICGCM
    Greater Safety With Increased Productivity Coal Mining Operations

    By William B. Beerbower

    When full length resin grouted bolts were introduced into U. S. coal mines some 11 years ago, it was assumed that safety would be the primary benefit. There is ample testimony to substantiate the safe

    Jan 1, 1982

  • SME-ICGCM
    Surface Movement of Super-wide Longwall Panels Using Top-coal Caving Method

    By Cao Shenggen

    Experiences in the developed countries have shown that continuous increase of panel width (or face length) is one of the major technical trends for high production high efficiency mines. Increasing th

    Jan 1, 2003

  • SME-ICGCM
    An Analysis of Rock Failure Around a Deep Longwall Using Microseismics

    By Keith Heasley

    In this paper, a state-of-the-art, three-dimensional, full waveform, microseismic system was used to analyze the rock failure around a deep (> 750 in (2500 ft) of cover) bump-prone longwall panel. The

    Jan 1, 2001